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Lateral wall protein content mediates alterations in cochlear outer hair cell mechanics before and after hearing onset.侧壁蛋白含量介导听力开始前后耳蜗外毛细胞力学特性的改变。
Cell Motil Cytoskeleton. 2007 Sep;64(9):705-17. doi: 10.1002/cm.20217.
2
Modulation of outer hair cell electromotility by cochlear supporting cells and gap junctions.耳蜗支持细胞和缝隙连接对外毛细胞电活动的调制。
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Activity-dependent regulation of prestin expression in mouse outer hair cells.小鼠外毛细胞中prestin表达的活动依赖性调节。
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alphaII-betaV spectrin bridges the plasma membrane and cortical lattice in the lateral wall of the auditory outer hair cells.αII-βV血影蛋白连接听觉外毛细胞侧壁中的质膜和皮质晶格。
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Distribution of actin in developing outer hair cells in the gerbil.沙鼠发育中外毛细胞中肌动蛋白的分布。
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Prestin and electromotility may serve multiple roles in cochlear outer hair cells.耳蝸外毛細胞中的 prestin 和電動力可能具有多種作用。
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The susceptibility of cochlear outer hair cells to cyclodextrin is not related to their electromotile activity.毛细胞的耳蜗外对环糊精的敏感性与其电活动无关。
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Changes in plasma membrane structure and electromotile properties in prestin deficient outer hair cells.敲出缺失 Prestin 的外毛细胞的质膜结构和运动性电特性的改变。
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Spatiotemporal Developmental Upregulation of Prestin Correlates With the Severity and Location of Cyclodextrin-Induced Outer Hair Cell Loss and Hearing Loss.声蛋白的时空发育上调与环糊精诱导的外毛细胞损失及听力损失的严重程度和位置相关。
Front Cell Dev Biol. 2021 May 24;9:643709. doi: 10.3389/fcell.2021.643709. eCollection 2021.
2
Membrane prestin expression correlates with the magnitude of prestin-associated charge movement.膜上的 Prestin 表达与 Prestin 相关的电荷移动幅度相关。
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3
Activity-dependent regulation of prestin expression in mouse outer hair cells.小鼠外毛细胞中prestin表达的活动依赖性调节。
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Structure and mechanics of supporting cells in the guinea pig organ of Corti.豚鼠耳蜗支持细胞的结构和力学特性。
PLoS One. 2012;7(11):e49338. doi: 10.1371/journal.pone.0049338. Epub 2012 Nov 7.
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Over half the hair cells in the mouse utricle first appear after birth, with significant numbers originating from early postnatal mitotic production in peripheral and striolar growth zones.超过半数的小鼠椭圆囊毛细胞在出生后首次出现,其中相当数量的细胞源自出生后早期的有丝分裂,起源于外周和嵴状生长区。
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Oncomodulin identifies different hair cell types in the mammalian inner ear.成孔蛋白可识别哺乳动物内耳中的不同毛细胞类型。
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The ultrastructural distribution of prestin in outer hair cells: a post-embedding immunogold investigation of low-frequency and high-frequency regions of the rat cochlea. prestin 在毛细胞中的超微结构分布:大鼠耳蜗低频和高频区的包埋后免疫金染色研究。
Eur J Neurosci. 2010 May;31(9):1595-605. doi: 10.1111/j.1460-9568.2010.07182.x.
9
Targeting of the hair cell proteins cadherin 23, harmonin, myosin XVa, espin, and prestin in an epithelial cell model.靶向上皮细胞模型中的毛细胞蛋白钙黏蛋白 23、缝隙连接蛋白 harmonin、肌球蛋白 XVa、espin 和 prestin。
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10
Making an effort to listen: mechanical amplification in the ear.努力倾听:耳朵中的机械放大作用。
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本文引用的文献

1
Prestin modulates mechanics and electromechanical force of the plasma membrane.Prestin调节质膜的力学和机电力。
Biophys J. 2007 Jul 1;93(1):L07-9. doi: 10.1529/biophysj.107.107573. Epub 2007 Apr 27.
2
Prestin-prestin and prestin-GLUT5 interactions in HEK293T cells.HEK293T细胞中prestin-prestin和prestin-GLUT5的相互作用。
Dev Neurobiol. 2007 Mar;67(4):483-97. doi: 10.1002/dneu.20357.
3
Functional expression and microdomain localization of prestin in cultured cells.培养细胞中prestin的功能表达及微区定位
Otolaryngol Head Neck Surg. 2007 Mar;136(3):434-9. doi: 10.1016/j.otohns.2006.10.030.
4
Thyroid hormone receptors TRalpha1 and TRbeta differentially regulate gene expression of Kcnq4 and prestin during final differentiation of outer hair cells.在外侧毛细胞的最终分化过程中,甲状腺激素受体TRα1和TRβ对Kcnq4和prestin的基因表达有不同的调节作用。
J Cell Sci. 2006 Jul 15;119(Pt 14):2975-84. doi: 10.1242/jcs.03013. Epub 2006 Jun 27.
5
Tuning in to the amazing outer hair cell: membrane wizardry with a twist and shout.聚焦神奇的外毛细胞:别具一格且活力十足的膜魔法
J Membr Biol. 2006 Feb-Mar;209(2-3):119-34. doi: 10.1007/s00232-005-0833-9. Epub 2006 May 25.
6
Prestin is expressed on the whole outer hair cell basolateral surface.Prestin在整个外毛细胞基底外侧表面均有表达。
Brain Res. 2006 Jun 20;1095(1):51-8. doi: 10.1016/j.brainres.2006.04.017. Epub 2006 May 18.
7
N-terminal-mediated homomultimerization of prestin, the outer hair cell motor protein.外毛细胞运动蛋白prestin的N端介导的同源多聚化
Biophys J. 2005 Nov;89(5):3345-52. doi: 10.1529/biophysj.105.068759. Epub 2005 Aug 19.
8
The C-terminus of prestin influences nonlinear capacitance and plasma membrane targeting.prestin的C末端影响非线性电容和质膜靶向。
J Cell Sci. 2005 Jul 1;118(Pt 13):2987-96. doi: 10.1242/jcs.02431.
9
Evidence for a highly elastic shell-core organization of cochlear outer hair cells by local membrane indentation.通过局部膜压痕证明耳蜗外毛细胞存在高度弹性的壳-核组织。
Biophys J. 2005 Apr;88(4):2982-93. doi: 10.1529/biophysj.104.052225. Epub 2005 Jan 14.
10
Effects of cyclic nucleotides on the function of prestin.环核苷酸对prestin功能的影响。
J Physiol. 2005 Mar 1;563(Pt 2):483-96. doi: 10.1113/jphysiol.2004.078857. Epub 2005 Jan 13.

侧壁蛋白含量介导听力开始前后耳蜗外毛细胞力学特性的改变。

Lateral wall protein content mediates alterations in cochlear outer hair cell mechanics before and after hearing onset.

作者信息

Jensen-Smith Heather, Hallworth Richard

机构信息

Department of Biomedical Sciences, Creighton University, Omaha, Nebraska 68178, USA.

出版信息

Cell Motil Cytoskeleton. 2007 Sep;64(9):705-17. doi: 10.1002/cm.20217.

DOI:10.1002/cm.20217
PMID:17615570
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1992524/
Abstract

Specialized outer hair cells (OHCs) housed within the mammalian cochlea exhibit active, nonlinear, mechanical responses to auditory stimulation termed electromotility. The extraordinary frequency resolution capacity of the cochlea requires an exquisitely equilibrated mechanical system of sensory and supporting cells. OHC electromotile length change, stiffness, and force generation are responsible for a 100-fold increase in hearing sensitivity by augmenting vibrational input to non-motile sensory inner hair cells. Characterization of OHC mechanics is crucial for understanding and ultimately preventing permanent functional deficits due to overstimulation or as a consequence of various cochlear pathologies. The OHCs' major structural assembly is a highly-specialized lateral wall. The lateral wall consists of three structures; a plasma membrane highly-enriched with the motor-protein prestin, an actin-spectrin cortical lattice, and one or more layers of subsurface cisternae. Technical difficulties in independently manipulating each lateral wall constituent have constrained previous attempts to analyze the determinants of OHCs' mechanical properties. Temporal separations in the accumulation of each lateral wall constituent during postnatal development permit associations between lateral wall structure and OHC mechanics. We compared developing and adult gerbil OHC axial stiffness using calibrated glass fibers. Alterations in each lateral wall component and OHC stiffness were correlated as a function of age. Reduced F-actin labeling was correlated with reduced OHC stiffness before hearing onset. Prestin incorporation into the PM was correlated with increased OHC stiffness at hearing onset. Our data indicate lateral wall F-actin and prestin are the primary determinants of OHC mechanical properties before and after hearing onset, respectively.

摘要

哺乳动物耳蜗内的特化外毛细胞(OHCs)对听觉刺激表现出活跃的、非线性的机械反应,称为电运动。耳蜗非凡的频率分辨能力需要一个由感觉细胞和支持细胞组成的极其平衡的机械系统。OHC的电运动长度变化、刚度和力的产生通过增强对无运动能力的感觉内毛细胞的振动输入,使听力敏感度提高了100倍。OHC力学特性的表征对于理解并最终预防因过度刺激或各种耳蜗病变导致的永久性功能缺陷至关重要。OHC的主要结构组件是高度特化的侧壁。侧壁由三种结构组成;富含运动蛋白prestin的质膜、肌动蛋白-血影蛋白皮质晶格以及一层或多层表面下池。独立操纵每个侧壁成分的技术困难限制了先前分析OHC机械性能决定因素的尝试。出生后发育过程中每个侧壁成分积累的时间差异允许对侧壁结构与OHC力学之间的关联进行研究。我们使用校准的玻璃纤维比较了发育中和成年沙鼠OHC的轴向刚度。每个侧壁成分的变化和OHC刚度随年龄而相关。在听力开始前,F-肌动蛋白标记减少与OHC刚度降低相关。在听力开始时,prestin掺入质膜与OHC刚度增加相关。我们的数据表明,侧壁F-肌动蛋白和prestin分别是听力开始前后OHC机械性能的主要决定因素。